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The Draft Genome of the Endangered Sichuan Partridge (Arborophila rufipectus) with Evolutionary Implications

机译:具有进化意义的濒危四川bor(Arborophila rufipectus)的基因组草图。

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摘要

The Sichuan partridge (Arborophila rufipectus, Phasianidae, Galliformes) is distributed in south-west China, and classified as endangered grade. To examine the evolution and genomic features of Sichuan partridge, we de novo assembled the Sichuan partridge reference genome. The final draft assembly consisted of approximately 1.09 Gb, and had a scaffold N50 of 4.57 Mb. About 1.94 million heterozygous single-nucleotide polymorphisms (SNPs) were detected, 17,519 protein-coding genes were predicted, and 9.29% of the genome was identified as repetitive elements. A total of 56 olfactory receptor (OR) genes were found in Sichuan partridge, and conserved motifs were detected. Comparisons between the Sichuan partridge genome and chicken genome revealed a conserved genome structure, and phylogenetic analysis demonstrated that Arborophila possessed a basal phylogenetic position within Phasianidae. Gene Ontology (GO) enrichment analysis of positively selected genes (PSGs) in Sichuan partridge showed over-represented GO functions related to environmental adaptation, such as energy metabolism and behavior. Pairwise sequentially Markovian coalescent analysis revealed the recent demographic trajectory for the Sichuan partridge. Our data and findings provide valuable genomic resources not only for studying the evolutionary adaptation, but also for facilitating the long-term conservation and genetic diversity for this endangered species.
机译:四川part(Arborophila rufipectus,Phasianidae,Galliformes)分布于中国西南地区,被列为濒危等级。为了研究四川part的进化和基因组特征,我们从头组装了四川part参考基因组。最终草案组件包括大约1.09 Gb,支架N50为4.57 Mb。检测到约194万个杂合单核苷酸多态性(SNP),预测了17,519个蛋白质编码基因,并且确定了9.29%的基因组为重复元件。在四川part中共发现56个嗅觉受体(OR)基因,并检测到保守的基序。四川part基因组基因组和鸡基因组之间的比较揭示了保守的基因组结构,系统发育分析表明,侧柏在Ph科中具有基础的系统发育位置。对四川part中阳性选择基因(PSG)的基因本体论(GO)富集分析表明,与环境适应有关的GO功能(如能量代谢和行为)被过度代表。成对的顺序马尔可夫合并分析揭示了四川part的最近人口轨迹。我们的数据和发现不仅为研究进化适应性提供了宝贵的基因组资源,而且还为该濒危物种的长期保存和遗传多样性提供了便利。

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